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Morphological study of mechanoreceptors in ligaments of the trapeziometacarpal joint

机译:梯形曲线瘤关节韧带力学器的形态学研究

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摘要

The complex stability of the trapeziometacarpal (TMC) joint depends on the role of ligaments and muscles around joints. The mechanoreceptors within ligaments and adequate regulation of peripheral neuromuscle reflexes promote joint dynamic stability. We know that the dorsal radial ligaments (DRL) and anterior oblique ligaments (AOL) play most respective roles of in controlling the stability of the TMC joint. This experiment has the following purposes (1) we want to describe the shape and distribution of mechanoreceptors in DRL and AOL of TMC joint using modified gold chloride staining techniques. (2) To explore whether there is a relationship between gender and the number of mechanoreceptors. Normal specimens of the thumb ligament were obtained from the upper limbs of 12 fresh frozen cadavers. The length, width and thickness of the DRL and AOL were measured. The DRLs and the AOLs were divided into the proximal, middle and distal sections. Each segments of ligament were made into 5 mu m thick slices. The slices were stained by modified gold chlorine staining techniques after the slices were dehydrated with 70% alcohol. All the four typical types of nerve endings (the Ruffini corpuscles, Pacinian corpuscles, Golgi corpuscles, and free nerve endings) were found in these ligaments. Pacinian corpuscles were the predominant in all four complexes. Most mechanoreceptors were found in synovial membrane near both ends of the ligaments attached to the bone. The DRL was significantly thicker and tougher than the AOL. The DRL had significantly more mechanoreceptors than AOL. There were significant differences in terms of the number of whole mechanoreceptors in the DRL and the AOL due to the differences of gender. The morphology and distribution of mechanoreceptors are different from those reported in previous literature, suggesting that TMC joint have more complex proprioceptive functions. The proprioception of TMC joint in male maybe more powerful than female.
机译:梯形仪的复杂稳定性(TMC)关节取决于韧带和肌肉周围关节的作用。韧带内的机械感受器和外周神经肌肉反射的适当调节促进了关节动态稳定性。我们知道背部径向韧带(DRL)和前倾斜韧带(AOL)在控制TMC关节的稳定性方面发挥着最相应的作用。该实验具有以下目的(1)我们希望描述使用改性的金氯化物染色技术描述TMC关节的机械感受器的形状和分布。 (2)探索性别之间是否存在关系和机械师数量之间的关系。从12个新鲜冷冻尸体的上肢获得拇指韧带的正常标本。测量DRL和AOL的长度,宽度和厚度。 DRL和AOL分为近端,中间和远端部分。将每个韧带分段成5亩厚切片。将切片用70%醇脱水后,通过改性金氯染色技术染色切片。在这些韧带中发现了所有四种典型的神经末梢(Ruffini Corpuscles,Parinian Corpuscles,Golgi Corpuscles和免费神经末梢)。斯佩尼亚的尸体在所有四个复合物中都是主要的。大多数机械师在附近韧带的两端附近的滑膜膜中发现。 DRL显着较厚,比AOL更粗糙。 DRL具有比AOL的更大的机制更大。由于性别的差异,DRL和AOL中整个机械师数量的数量差异存在显着差异。力学感受器的形态和分布与先前文献报告的形态和分布不同,这表明TMC关节具有更复杂的预感功能。在男性中的TMC关节的预见可能比女性更强大。

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